食品科学 ›› 2022, Vol. 43 ›› Issue (10): 263-270.doi: 10.7506/spkx1002-6630-20210728-335

• 成分分析 • 上一篇    下一篇

不同脂肪来源婴儿配方乳粉与母乳脂质组成的差异分析

林爽,李晓东,刘璐,张秀秀,李春梅,冷友斌,蒋士龙   

  1. (1.东北农业大学食品学院,乳品科学教育部重点实验室,黑龙江 哈尔滨 150030;2.黑龙江省绿色食品科学研究院,黑龙江 哈尔滨 150028;3.黑龙江飞鹤乳业有限公司,黑龙江 哈尔滨 150030)
  • 出版日期:2022-05-25 发布日期:2022-05-27
  • 基金资助:
    黑龙江省“百千万”工程科技重大专项(2019ZX07B01); 中国食品科学技术学会食品科技基金—雅培食品营养与安全专项科研基金项目(2020-01)

Comparative Analysis of Lipid Composition of Infant Formula with Different Fat Sources and Human Milk

LIN Shuang, LI Xiaodong, LIU Lu, ZHANG Xiuxiu, LI Chunmei, LENG Youbin, JIANG Shilong   

  1. (1. Key Laboratory of Dairy Science, Ministry of Education, College of Food Science, Northeast Agricultural University, Harbin 150030, China; 2. Heilongjiang Institute of Green Food Science, Harbin 150028, China; 3. Heilongjiang Feihe Dairy Co. Ltd., Harbin 150030, China)
  • Online:2022-05-25 Published:2022-05-27

摘要: 研究4 种不同脂肪来源的婴儿配方乳粉与母乳在总脂肪酸、sn-2位脂肪酸及甘油三酯上的脂质组成差异。结果表明,从样品中共检测出27 种脂肪酸及87 种甘油三酯,与母乳相比,4 种婴儿配方乳粉含有更多的饱和脂肪酸,较少的多不饱和脂肪酸,且母乳中超过70%的饱和脂肪酸酯化在甘油三酯的sn-2位,而4 种婴儿配方乳粉甘油三酯sn-2位更多的被不饱和脂肪酸占据,尤其是植物油基IF1和IF2,sn-2位不饱和脂肪酸高达80%。在甘油三酯组成方面,母乳中1-油酸-2-棕榈酸-3-亚油酸甘油三酯、1,3-二油酸-2-棕榈酸甘油三酯及一些中长链甘油三酯显著高于4 种婴儿配方乳粉(P<0.05),而婴儿配方乳粉含有更多的三油酸甘油三酯、1-油酸-2,3-二亚油酸甘油三酯及一些中链甘油三酯(P<0.05),并且脂肪来源的不同会显著影响婴儿配方乳粉的脂质组成,同为植物油基的IF1和IF2具有更相似的甘油三酯、脂肪酸组成及分布,并与添加了乳脂成分的IF3和IF4形成明显区分,且牛乳/植物油混合基婴儿配方乳粉在整体脂质组成上更加接近母乳。最后,基于多变量分析,发现共有16 种甘油三酯可用于区分人乳和婴儿配方奶粉。本研究结果有助于研发更接近人乳的婴儿配方乳粉。

关键词: 婴儿配方乳粉;母乳;甘油三酯;总脂肪酸;sn-2脂肪酸

Abstract: In this study, we performed a comparative analysis of the total fatty acid, sn-2 fatty acid and triglyceride composition of infant formula (IF) with four different fat sources and human milk. The results showed that a total of 27 fatty acids and 87 triglycerides were detected across all samples. Compared with human milk, the four IFs contained more saturated fatty acids and less polyunsaturated fatty acids. More than 70% of the saturated fatty acids in human milk were esterified at the sn-2 position of triglycerides, whereas the sn-2 position of triglycerides in the four IFs was mostly occupied by unsaturated fatty acids, especially vegetable oil-based IF1 and IF2, with 80% sn-2 unsaturated fatty acids. In terms of triglyceride composition, the contents of 1-oleic acid-2-palmitate-3-linoleic acid triglyceride (OPL), 1,3-dioleic acid-2-palmitic acid triglyceride (OPO) and some medium and long-chain triglycerides in human milk were significantly higher than those in the IFs (P < 0.05), while the IFs contained more triolein (OOO), 1-oleic acid-2,3- linoleic acid triglycerides (OLL) and some medium-chain triglycerides (P < 0.05). Different fat sources could significantly affect the lipid composition of IF. IF1 and IF2 had similar triglyceride and fatty acid composition and distribution. They were clearly distinguished from IF3 and IF4 with added milk fat, and milk/vegetable oil mixed-based IF was closer to human milk in terms of overall lipid composition. Finally, based on multivariate analysis, a total of 16 triglycerides were found to useful to discriminate between human milk and infant formula. The results reported herein are useful in designing new milk formula that can better mimic human milk.

Key words: infant formula; human milk; triglycerides; total fatty acids; sn-2 fatty acids

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